Parylene C is a promising material for constructing flexible, biocompatible and corrosion-resistant microelectromechanical systems (MEMS) devices. Historically, Parylene C has been employed as an encapsulation material for medical implants, such as stents and pacemakers, due to its strong barrier properties and biocompatibility. In the past few decades, the adaptation of planar microfabrication processes to thin film Parylene C has encouraged its use as an insulator, structural and substrate material for MEMS and other microelectronic devices. However, Parylene C presents unique challenges during microfabrication and during use with liquids, especially for flexible, thin film electronic devices. In particular, the flexibility and low therma...
Herein, we reported several advanced parylene fabrication techniques for various micro/nano devices ...
This paper proposed a simple and effective fabrication method of Parylene C-caulked PDMS (pcPDMS) fo...
Parylene has attracted significant research attention due to its attractive properties such as good ...
Parylene C is a promising material for constructing flexible, biocompatible and corrosion-resistant ...
2019-04-26Parylene provides many advantages as a material for thin-film implantable devices, however...
This paper describes parylene as an emerging bioMEMS material. Parylene has the unique feature of ro...
Herein, we reported several advanced parylene fabrication techniques for various micro/nano devices ...
2016-07-21The development of implantable devices for biomedical applications has been heavily galvan...
A novel technique for producing high aspect ratio parylene structures via switching chemistry plasma...
Parylenes are used for a wide range of applications in microelectromechanical systems (MEMS) devices...
Parylenes are used for a wide range of applications in microelectromechanical systems (MEMS) devices...
Active implantable medical devices have been developed for diagnosis, monitoring and treatment of la...
Parylene C has been investigated for use as a sacrificial material in microfabrication. Although Par...
This paper proposed a simple and effective fabrication method of Parylene C-caulked PDMS (pcPDMS) fo...
Following the recent trend of miniaturization of MEMS and the approach to improve the comfort of med...
Herein, we reported several advanced parylene fabrication techniques for various micro/nano devices ...
This paper proposed a simple and effective fabrication method of Parylene C-caulked PDMS (pcPDMS) fo...
Parylene has attracted significant research attention due to its attractive properties such as good ...
Parylene C is a promising material for constructing flexible, biocompatible and corrosion-resistant ...
2019-04-26Parylene provides many advantages as a material for thin-film implantable devices, however...
This paper describes parylene as an emerging bioMEMS material. Parylene has the unique feature of ro...
Herein, we reported several advanced parylene fabrication techniques for various micro/nano devices ...
2016-07-21The development of implantable devices for biomedical applications has been heavily galvan...
A novel technique for producing high aspect ratio parylene structures via switching chemistry plasma...
Parylenes are used for a wide range of applications in microelectromechanical systems (MEMS) devices...
Parylenes are used for a wide range of applications in microelectromechanical systems (MEMS) devices...
Active implantable medical devices have been developed for diagnosis, monitoring and treatment of la...
Parylene C has been investigated for use as a sacrificial material in microfabrication. Although Par...
This paper proposed a simple and effective fabrication method of Parylene C-caulked PDMS (pcPDMS) fo...
Following the recent trend of miniaturization of MEMS and the approach to improve the comfort of med...
Herein, we reported several advanced parylene fabrication techniques for various micro/nano devices ...
This paper proposed a simple and effective fabrication method of Parylene C-caulked PDMS (pcPDMS) fo...
Parylene has attracted significant research attention due to its attractive properties such as good ...